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NSR database version of April 27, 2024.

Search: Author = K.Petrik

Found 4 matches.

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2020SE13      Eur.Phys.J. A 56, 161 (2020)

M.Sedlak, M.Venhart, J.L.Wood, V.Matousek, M.Balogh, A.J.Boston, T.E.Cocolios, L.J.Harkness-Brennan, R.-D.Herzberg, D.T.Joss, D.S.Judson, J.Kliman, R.D.Page, A.Patel, K.Petrik, M.Veselsky

Nuclear structure of 181Au studied via β+/EC decay of 181Hg at ISOLDE

RADIOACTIVITY 181Hg(EC), (β+) [from Pb(p, X)181Hg, E=1.4 GeV];measured decay products, Eγ, Iγ, γ-γ-coin.; deduced γ-ray energies and relative intensities, decay scheme, negative parity states. Comparison with systematics. The TATRA spectrometer at the ISOLDE facility at CERN.

doi: 10.1140/epja/s10050-020-00174-0
Citations: PlumX Metrics


2018PE06      Phys.Rev. C 97, 034321 (2018)

K.Petrik, M.Kortelainen

Thouless-Valatin rotational moment of inertia from linear response theory

NUCLEAR STRUCTURE 160,162,164,166,168,170,172Er, 164,166,168,170,172,174Yb, 232,234,236,238,240,242U, 236,238,240,242,244,246Pu; calculated Thouless-Valatin rotational moment of inertia for volume pairing and vanishing pairing options. Comparison with experimental data for rotational bands. 166Er; calculated total current density, and partial induced currents from specific QRPA blocks with and without pairing. Finite-amplitude method (FAM) of the quasiparticle random-phase approximation (QRPA) with Skyrme energy density functional framework and Hartree-Fock-Bogoliubov theory for rotational properties of deformed nuclei.

doi: 10.1103/PhysRevC.97.034321
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2017VE02      J.Phys.(London) G44, 074003 (2017)

M.Venhart, J.L.Wood, M.Sedlak, M.Balogh, M.Birova, A.J.Boston, T.E.Cocolios, L.J.Harkness-Brennan, R.-D.Herzberg, L.Holub, D.T.Joss, D.S.Judson, J.Kliman, J.Klimo, L.Krupa, J.Lusnak, L.Makhathini, V.Matousek, S.Motycak, R.D.Page, A.Patel, K.Petrik, A.V.Podshibyakin, P.M.Prajapati, A.M.Rodin, A.Spacek, R.Urban, C.Unsworth, M.Veselsky

New systematic features in the neutron-deficient Au isotopes

RADIOACTIVITY 183Hg(EC), (β+) [Pb(p, X), E=1.4 GeV]; measured decay products, Eγ, Iγ, γ-γ-coin; deduced γ-ray energies, J, π, conversion electrons, transition multipolarities. Comparison with available data.

doi: 10.1088/1361-6471/aa7297
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2017VE04      Nucl.Instrum.Methods Phys.Res. A849, 112 (2017)

M.Venhart, J.L.Wood, A.J.Boston, T.E.Cocolios, L.J.Harkness-Brennan, R.-D.Herzberg, D.T.Joss, D.S.Judson, J.Kliman, V.Matousek, S.Motycak, R.D.Page, A.Patel, K.Petrik, M.Sedak, M.Veselsky

Application of the Broad Energy Germanium detector: A technique for elucidating β-decay schemes which involve daughter nuclei with very low energy excited states

RADIOACTIVITY 183Hg(EC), (α), (ECp); measured reaction products, Eγ, Iγ, γ-γ-coin.; deduced γ-ray energies, energy levels. Rydberg-Ritz combinations, comparison with available data.

doi: 10.1016/j.nima.2016.12.048
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Data from this article have been entered in the XUNDL database. For more information, click here.


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